3.8 Article

Localization and entanglement of two interacting electrons in a quantum-dot molecule

Journal

EUROPHYSICS LETTERS
Volume 53, Issue 6, Pages 776-782

Publisher

E D P SCIENCES
DOI: 10.1209/epl/i2001-00219-7

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The localization of two interacting electrons in a coupled-quantum-dots semi-conductor structure is demonstrated through numerical calculations of the time evolution of the two-electron wave function including the Coulomb interaction between the electrons. The transition from the ground state to a localized state is induced by an external, time-dependent, uniform electric field. It is found that while an appropriate constant field can localize both electrons in one of the wells, oscillatory fields can induce roughly equal probabilities for both electrons to be localized in either well, generating an interesting type of localized and entangled state. We also show that shifting the field suddenly to an appropriate constant value can maintain in time both types localization.

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